Platensimycin has shown good activity against a panel of Gram-positive bacteria, including various resistant strains. Platensimycin works by inhibiting beta-ketoacyl syntheses I/II (FabF/B), which are involved in the production of fatty acids required for bacterial cell membranes. It interferes with enzymes involved in the
condensation steps in
fatty acid biosynthesis, which
Gram-positive bacteria need to biosynthesise
cell membranes. Other enzymes in this pathway have similarly been proven as antibiotic targets, such as FabI, the
enoyl-ACP (acyl carrier protein) reductase, which is inhibited by
isoniazid and related compounds and the
antiseptic agent
triclosan. One proposed mechanism of action is that, firstly, the
thiol group of FabF Cys163 is activated through the
dipole moment of helix N-alpha-3 which lowers the
pKa. The
nucleophilicity of the
cysteine is enhanced by an
oxyanion hole formed with the
backbone amides of Cys163 and Phe400. The
crystal structure complex with platensimycin employed a C163Q
mutant, which gave a 50-fold increase in apparent binding. The Gln163
residue lies adjacent to the
carboxylate of platensimycin but makes no specific
hydrogen bond. The close proximity of the carboxylate of platensimycin (presumed to be an
anion) to the anionic thiol of Cys163 in the
wild type enzyme may suggest the reason behind the increase in binding of the C163Q mutant. The second set of residues worth considering comprises His303 and His340, which play a role in the decarboxylation mechanism of the
malonyl moiety. In particular, His303 activates a structured
water to attack the carboxylate of the incoming malonyl-ACP. The crystal structure of FabF also demonstrates that His340 forms a hydrogen bond between the amide
nitrogen of Leu342 and the N-delta- atom of the
imidazole ring meaning that the lone pair must reside on this atom. In the platensimycin crystal structure the structured water adjacent to His303 is no longer present which may suggest an alternative electronic state for this residue. A strong possibility exists that His303 would present itself as a cation capable of forming an ionic interaction with the benzoic acid group of platensimycin. ==References==